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Conceptual design of a thermo-electrical energy storage system based on heat integration of thermodynamic cycles - Part B: Alternative system configurations

机译:基于热力循环热集成的热电储能系统的概念设计-B部分:替代系统配置

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Thermo-electrical energy storage (TEES) based on thermodynamic cycles is currently under investigation at ABB corporate research as an alternative solution to more consolidated but site-dependent electricity storage technologies such as pump-hydro or compressed air energy storage. During charge electricity is converted into thermal energy by means of a heat pump and during discharge a thermal engine converts thermal energy into electricity. The synthesis and the thermodynamic optimization of a TEES system based on hot water, ice storage and on transcritical CO_2 cycles is discussed in two papers (part A and part B). A methodology for the conceptual design of a TEES system based on Pinch Analysis tools was introduced in part A together with the results of a thermodynamic optimization of a base case. The overall synthesis problem was solved by implementing in the optimization a heuristic procedure for the synthesis of the heat exchanger network and the storage tanks thus letting the optimal complete system structure and its design parameters to be found for given values of cycle parameters. In part A, basic topologies for the CO_2 heat pump (HP) and thermal engine (TE) were considered, and no alternative cycle configurations were investigated through the optimization. A larger synthesis problem involving the change of cycle topologies is addressed in this second paper. Different system configurations were generated by modifying the base case configuration through an organized procedure and were optimized separately following the objective of maximum roundtrip efficiency only, as done for the base case in part A. The optimization results of the new configurations are discussed and compared with the base case scenario. A complete picture of the impact of design choices on the maximum system performances is obtained.
机译:ABB公司研究目前正在研究基于热力学循环的热电储能(TEES),作为更综合但依赖于现场的储电技术(如泵水或压缩空气储能)的替代解决方案。在充电过程中,电力通过热泵转换为热能,而在放电过程中,热机将热能转换为电能。在两篇论文(A部分和B部分)中讨论了基于热水,储冰和跨临界CO_2循环的TEES系统的合成和热力学优化。在A部分中介绍了基于Pinch分析工具的TEES系统概念设计的方法,以及基本案例的热力学优化结果。通过优化实现热交换器网络和储罐综合的启发式程序,从而解决了整体综合问题,从而针对给定的循环参数值找到了最佳的完整系统结构及其设计参数。在A部分中,考虑了CO_2热泵(HP)和热机(TE)的基本拓扑,并且没有通过优化研究替代循环配置。在第二篇论文中讨论了涉及循环拓扑结构变化的较大综合问题。通过有组织的程序修改基本案例的配置来生成不同的系统配置,并按照仅最大往返效率的目标分别进行了优化(如A部分中针对基本案例所做的那样)。对新配置的优化结果进行了讨论并与之比较。基本情况。完整了解了设计选择对最大系统性能的影响。

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